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Uniaxial and buckling mechanical response of auxetic cellular tubes

机译:张性细胞管的单轴和屈曲力学响应

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Auxetic cellular tubes are emerging as potential candidates for a number of critical devices requiring high resistance to kinking, such as angioplasty stents or annuloplasty rings. This work investigates the collapse under pure bending of auxetic tubes based on inverted hexagonal honeycombs, with the aim to identify design strategies suitable for improving their kinking response. First, the mechanical properties of the structure are determined under small deformation by means of analytical approaches, and used to verify the validity of numerical models. These are then used to simulate the tube collapse under pure bending, and identify the influence of the geometric parameters defining the structure on the phenomenon. The study indicates that the adoption of auxetic tubular structures can contribute to improving considerably the resistance to kinking, suggesting the parameters to be controlled in the design of critical applications.
机译:辅助细胞管正在成为许多要求高度抗扭结的关键设备(如血管成形术支架或瓣环成形术环)的潜在候选者。这项工作研究了基于倒置六角形蜂窝的导流管在纯弯曲下的塌陷,旨在确定适合于改善其扭结响应的设计策略。首先,通过分析方法确定结构在较小变形下的力学性能,并用于验证数值模型的有效性。然后将这些用于模拟纯弯曲下的管塌陷,并确定定义结构的几何参数对现象的影响。研究表明,采用膨胀管结构可以大大改善抗弯折性,这表明在关键应用设计中需要控制的参数。

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